Resnick M A, Stasiewicz S, Game J C
Genetics. 1983 Aug;104(4):583-601. doi: 10.1093/genetics/104.4.583.
The effects of UV irradiation on DNA metabolism during meiosis have been examined in wild-type (RAD+) and mitotically defined excision-defective (rad1-1) strains of Saccharomyces cerevisiae that exhibit high levels of sporulation. The rad1-1 gene product is not required for normal meiosis: DNA synthesis, RNA synthesis, size of parental and newly synthesized DNA and sporulation are comparable in RAD+ and rad1-1 strains. Cells were UV irradiated at the beginning of meiosis, and the fate of UV-induced pyrimidine dimers as well as changes in DNA and DNA synthesis were followed during meiosis. Excision repair of pyrimidine dimers can occur during meiosis and the RAD1 gene product is required; alternate excision pathways do not exist. Although the rate of elongation is decreased, the presence of pyrimidine dimers during meiosis in the rad1-1 strain does not block meiotic DNA synthesis suggesting a bypass mechanism. The final size of DNA is about five times the distance between pyrimidine dimers after exposure to 4 J/m2. Since pyrimidine dimers induced in parental strands of rad1-1 prior to premeiotic DNA synthesis do not become associated with newly synthesized DNA, the mechanism for replicational bypass does not appear to involve a recombinational process. The absence of such association indicates that normal meiotic recombination is also suppressed by UV-induced damage in DNA; this result at the molecular level is supported by observations at the genetic level.
在具有高孢子形成水平的酿酒酵母野生型(RAD+)和经有丝分裂定义的切除缺陷型(rad1-1)菌株中,研究了紫外线照射对减数分裂过程中DNA代谢的影响。正常减数分裂不需要rad1-1基因产物:RAD+和rad1-1菌株在DNA合成、RNA合成、亲本和新合成DNA的大小以及孢子形成方面相当。在减数分裂开始时对细胞进行紫外线照射,并在减数分裂过程中追踪紫外线诱导的嘧啶二聚体的命运以及DNA和DNA合成的变化。嘧啶二聚体的切除修复可在减数分裂期间发生,且需要RAD1基因产物;不存在替代切除途径。虽然延伸速率降低,但rad1-1菌株减数分裂期间嘧啶二聚体的存在并不阻断减数分裂DNA合成,这表明存在一种绕过机制。在暴露于4 J/m2后,DNA的最终大小约为嘧啶二聚体之间距离的五倍。由于在减数分裂前DNA合成之前在rad1-1亲本链中诱导的嘧啶二聚体不会与新合成的DNA相关联,复制绕过机制似乎不涉及重组过程。这种关联的缺失表明正常的减数分裂重组也受到DNA中紫外线诱导损伤的抑制;这一分子水平的结果得到了遗传水平观察结果的支持。